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Development of Mechanostimulated Patch-Clamp System for Cellular Physiological Study

机译:机械刺激的膜片钳系统的细胞生理学研究进展

摘要

Mechanosensitive ion channels play important roles for sensing and responding to the mechanical stimuli signals in living life. Here we report the development of a mechanostimulated patch-clamp system for simultaneous recording of external stimuli and acquisition of cellular physiological responses. This system integrates a custom-designed planar patch-clamp system with a robot-assisted atomic force microscope (AFM) system. The former, with a microfluidic channel, can realize not only recording electrical signals but also exchanging intracellular solution; while the latter, enhanced by robotic techniques (local scan force feedback, augmented reality vision feedback), can generate force stimuli with controllable patterns and magnitudes under the operator’s real-time monitoring. To verify the performance of the developed system, we first measured the whole-cell current of the voltagegated potassium ion channel Kv1.1 expressed on Human Embryonic Kidney (HEK293) cells and then recorded the mechanosensitive ion channel current in amouse neuroblastoma cell line (Neuro2 A) in the whole-cell configuration during the AFM indenting on the membrane surface; finally, confirmed the ability to exchange intracellular solution by delivering propidium iodide into the captured cell through intracellular solution. The results prove the effectiveness of the system.
机译:机械敏感的离子通道在传感和响应生活中的机械刺激信号方面起着重要作用。在这里,我们报告机械同步刺激的膜片钳系统的发展,用于同时记录外部刺激和获得细胞生理反应。该系统将定制设计的平面膜片钳系统与机器人辅助原子力显微镜(AFM)系统集成在一起。前者具有微流体通道,不仅可以记录电信号,而且可以交换细胞内溶液。而后者则通过机器人技术(局部扫描力反馈,增强现实视觉反馈)进行了增强,可以在操作员的实时监控下生成具有可控模式和大小的力刺激。为了验证所开发系统的性能,我们首先测量了在人胚肾脏(HEK293)细胞上表达的电压门控钾离子通道Kv1.1的全细胞电流,然后记录了成年神经母细胞瘤细胞系(Neuro2)的机械敏感离子通道电流。 A)在AFM压入膜表面的全细胞配置中;最后,通过将碘化丙锭通过细胞内溶液传递到捕获的细胞中,证实了交换细胞内溶液的能力。结果证明了该系统的有效性。

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